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Fast visible and extended near-infrared multispectral fundus camera

机译:快速可见和扩展的近红外多光谱眼底照相机

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摘要

We present a multispectral fundus camera that performs fast imaging of the ocular posterior pole in the visible and near-infrared (400 to 1300 nm) wavelengths through 15 spectral bands, using a flashlight source made of light-emitting diodes, and CMOS and InGaAs cameras. We investigate the potential of this system for visualizing occult and overlapping structures of the retina in the unexplored wavelength range beyond 900 nm, in which radiation can penetrate deeper into the tissue. Reflectance values at each pixel are also retrieved from the acquired images in the analyzed spectral range. The available spectroscopic information and the visualization of retinal structures, specifically the choroidal vasculature and drusen-induced retinal pigment epithelium degeneration, which are hardly visible in conventional color fundus images, underline the clinical potential of this system as a new tool for ophthalmic diagnosis.
机译:我们提出了一种多光谱眼底照相机,该照相机使用由发光二极管制成的闪光灯光源,CMOS和InGaAs照相机对可见光和近红外(400至1300 nm)波长在15个光谱带中的影像进行快速成像。 。我们研究了该系统在超过900 nm的未探索波长范围内可视化视网膜的隐匿和重叠结构的潜力,其中辐射可以更深地渗透到组织中。在分析的光谱范围内,还可以从获取的图像中检索每个像素的反射率值。现有的光谱信息和视网膜结构的可视化,尤其是脉络膜脉管系统和玻璃膜疣引起的视网膜色素上皮变性,在常规彩色眼底图像中几乎看不到,这突显了该系统作为眼科诊断新工具的临床潜力。

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